A generalized super-twisting algorithm-based adaptive fixed-time controller for spacecraft pose tracking

IF 0.5 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
Kejie Gong, Yong Wang, Yurui Duan, Yafei Mei, Yu Jiang, Da Luo
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引用次数: 0

Abstract

A generalized super-twisting second-order sliding mode adaptive fixed-time control law, which is used for spacecraft pose tracking in the presence of internal and external uncertainties, is proposed. Lie group SE(3) (for special Euclidean group), which is the configuration space for rigid body motion, is used for modeling the six-degrees-of-freedom dynamics of spacecraft. A fixed-time sliding mode surface is proposed and applied to design an generalized super-twisting sliding mode control law. A novel dual-layer adaption law for the controller is proposed to the ensure the gains varying rapidly with the disturbance. The adaptive second-order sliding mode controller guarantees a uniform exact convergence for the closed-loop tracking control system with less energy consumption. Numerical simulations are performed to demonstrate the excellent performances of the control law.
基于广义超扭曲算法的航天器姿态跟踪自适应固定时间控制器
提出了一种广义超扭曲二阶滑模自适应固定时间控制法,用于在存在内部和外部不确定性的情况下进行航天器姿态跟踪。利用刚体运动构型空间的列群 SE(3)(表示特殊欧几里得群)对航天器的六自由度动力学进行建模。提出了固定时间滑动模态曲面,并将其用于设计广义超扭曲滑动模态控制法则。为确保增益随干扰快速变化,提出了一种新颖的控制器双层自适应法则。自适应二阶滑模控制器保证了闭环跟踪控制系统的均匀精确收敛,且能耗更低。数值模拟证明了该控制法的卓越性能。
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来源期刊
Open Astronomy
Open Astronomy Physics and Astronomy-Astronomy and Astrophysics
CiteScore
1.30
自引率
14.30%
发文量
37
审稿时长
16 weeks
期刊介绍: The journal disseminates research in both observational and theoretical astronomy, astrophysics, solar physics, cosmology, galactic and extragalactic astronomy, high energy particles physics, planetary science, space science and astronomy-related astrobiology, presenting as well the surveys dedicated to astronomical history and education.
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